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TLK1的显性负性突变体在正常乳腺上皮细胞中导致染色体错分离和非整倍体。

A dominant negative mutant of TLK1 causes chromosome missegregation and aneuploidy in normal breast epithelial cells.

作者信息

Sunavala-Dossabhoy Gulshan, Li Yuan, Williams Briana, De Benedetti Arrigo

机构信息

Department of Biochemistry and Molecular Biology and the Feist-Weiller Cancer Center, Louisiana State University Health Sciences Center, 1501 Kings Highway, Shreveport, LA 71130-3932, USA.

出版信息

BMC Cell Biol. 2003 Oct 28;4:16. doi: 10.1186/1471-2121-4-16.

Abstract

BACKGROUND

In Arabidopsis thaliana, the gene Tousled encodes a protein kinase of unknown function, but mutations in the gene lead to flowering and leaf morphology defects. We have recently cloned a mammalian Tousled-Like Kinase (TLK1B) and found that it phosphorylates specifically histone H3, in vitro and in vivo. We now report the effects that overexpression of a kinase-dead mutant of TLK1B mediates in a normal diploid cell line.

RESULTS

Expression of a kinase-dead mutant resulted in reduction of phosphorylated histone H3, which could have consequences in mitotic segregation of chromosomes. When analyzed by FACS and microscopy, these cells displayed high chromosome number instability and aneuploidy. This phenomenon was accompanied by less condensed chromosomes at mitosis; failure of a number of chromosomes to align properly on the metaphase plate; failure of some chromosomes to attach to microtubules; and the occasional presentation of two bipolar spindles. We also used a different method (siRNA) to reduce the level of endogenous TLK1, but in this case, the main result was a strong block of cell cycle progression suggesting that TLK1 may also play a role in progression from G1. This block in S phase progression could also offer a different explanation of some of the later mitotic defects.

CONCLUSIONS

TLK1 has a function important for proper chromosome segregation and maintenance of diploid cells at mitosis in mammalian cells that could be mediated by reduced phosphorylation of histone H3 and condensation of chromosomes, although other explanations to the phenotype are possible.

摘要

背景

在拟南芥中,Tousled基因编码一种功能未知的蛋白激酶,但该基因的突变会导致开花和叶片形态缺陷。我们最近克隆了一种哺乳动物类Tousled激酶(TLK1B),并发现它在体外和体内都能特异性地磷酸化组蛋白H3。我们现在报告TLK1B激酶失活突变体的过表达在正常二倍体细胞系中所介导的效应。

结果

激酶失活突变体的表达导致磷酸化组蛋白H3减少,这可能会对染色体的有丝分裂分离产生影响。通过荧光激活细胞分选术(FACS)和显微镜分析,这些细胞表现出高染色体数不稳定性和非整倍性。这种现象伴随着有丝分裂时染色体凝聚程度降低;许多染色体未能在中期板上正确排列;一些染色体未能附着于微管;以及偶尔出现两个双极纺锤体。我们还使用了另一种方法(小干扰RNA,siRNA)来降低内源性TLK1的水平,但在这种情况下,主要结果是细胞周期进程受到强烈阻滞,这表明TLK1可能在从G1期的进程中也发挥作用。S期进程中的这种阻滞也可能为一些后期的有丝分裂缺陷提供不同的解释。

结论

TLK1在哺乳动物细胞有丝分裂时对正确的染色体分离和二倍体细胞的维持具有重要功能,这可能是由组蛋白H3磷酸化减少和染色体凝聚介导的,尽管对该表型也可能有其他解释。

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